Lectures on the Infrared Structure of Gravity and Gauge Theory | Agenda Bookshop Skip to content
A01=Andrew Strominger
Age Group_Uncategorized
Age Group_Uncategorized
Amplitude
Angular momentum
Anti-de Sitter space
Asymptotically flat spacetime
Author_Andrew Strominger
automatic-update
Black hole information paradox
Category1=Non-Fiction
Category=PH
Category=PHDV
Category=PHVB
Classical electromagnetism
Conformal field theory
Conservation law
COP=United States
Correlation function (quantum field theory)
Cosmic string
Creation and annihilation operators
Delivery_Delivery within 10-20 working days
Dirac bracket
Dirac delta function
Domain wall (magnetism)
Domain wall (optics)
Einstein field equations
Electromagnetic field
Electromagnetism
Elementary particle
eq_isMigrated=2
eq_non-fiction
eq_science
Expectation value (quantum mechanics)
Fermion
Gauge theory
Graviton
Hamiltonian mechanics
Hawking radiation
Helicity (particle physics)
Holographic principle
Infrared divergence
Lagrangian (field theory)
Language_English
Lorentz covariance
Lorentz group
Lorentz transformation
Massive particle
Massless particle
Minkowski space
Neutrino
PA=Available
Perturbation theory (quantum mechanics)
Phase space
Photon
Point particle
Price_€50 to €100
PS=Active
Quantum chaos
Quantum chromodynamics
Quantum electrodynamics
Quantum entanglement
Quantum field theory
Quantum fluctuation
Quantum gravity
Quantum mechanics
Quantum number
Quantum state
Ray (optics)
S-matrix
Scalar (physics)
Scalar field theory
Scattering amplitude
Schwarzschild metric
softlaunch
Special relativity
Spontaneous symmetry breaking
String theory
Supergravity
Superspace
Supersymmetry
Symmetry breaking
Theorem
Theoretical physics
Timelike Infinity
Two-dimensional space
Unitarity (physics)
Vacuum
Yang–Mills theory

Lectures on the Infrared Structure of Gravity and Gauge Theory

English

By (author): Andrew Strominger

A short, graduate-level synthesis of recent developments in theoretical physics, from a pioneer in the field

Lectures on the Infrared Structure of Gravity and Gauge Theory presents an accessible, graduate-level synthesis of a frontier research area in theoretical physics. Based on a popular Harvard University course taught by the author, this book gives a concise introduction to recent discoveries concerning the structure of gravity and gauge theory at very long distances. These discoveries unite three disparate but well-developed subjects in physics.

The first subject is the soft theorems, which were found by particle physicists in the 1950s to control the behavior of low-energy photons and are essential for all collider predictions. The second subject is asymptotic symmetries, found by general relativists in the 1960s to provide a surprising, infinite number of exact relations between distinct physical phenomena. The third subject is the memory effect, the measurement of which is sought in upcoming gravitational wave observations. An exploration of the physical and mathematical equivalence of these three subjects has provided a powerful new perspective on old results and led to a plethora of new results, involving symmetries of QED, gluon scattering amplitudes, flat-space holography in quantum gravity, black hole information, and beyond.

Uniquely connective and cutting-edge, Lectures on the Infrared Structure of Gravity and Gauge Theory takes students and scholars to the forefront of new developments in the discipline.

  • Materials are presented in a "lecture notes" style with problem sets included
  • Concise and accessible pedagogical approach
  • Topics include soft theorems, the memory effect, asymptotic symmetries with applications to QED, Yang-Mills theory, quantum gravity, and black holes
See more
Current price €59.99
Original price €61.50
Save 2%
A01=Andrew StromingerAge Group_UncategorizedAmplitudeAngular momentumAnti-de Sitter spaceAsymptotically flat spacetimeAuthor_Andrew Stromingerautomatic-updateBlack hole information paradoxCategory1=Non-FictionCategory=PHCategory=PHDVCategory=PHVBClassical electromagnetismConformal field theoryConservation lawCOP=United StatesCorrelation function (quantum field theory)Cosmic stringCreation and annihilation operatorsDelivery_Delivery within 10-20 working daysDirac bracketDirac delta functionDomain wall (magnetism)Domain wall (optics)Einstein field equationsElectromagnetic fieldElectromagnetismElementary particleeq_isMigrated=2eq_non-fictioneq_scienceExpectation value (quantum mechanics)FermionGauge theoryGravitonHamiltonian mechanicsHawking radiationHelicity (particle physics)Holographic principleInfrared divergenceLagrangian (field theory)Language_EnglishLorentz covarianceLorentz groupLorentz transformationMassive particleMassless particleMinkowski spaceNeutrinoPA=AvailablePerturbation theory (quantum mechanics)Phase spacePhotonPoint particlePrice_€50 to €100PS=ActiveQuantum chaosQuantum chromodynamicsQuantum electrodynamicsQuantum entanglementQuantum field theoryQuantum fluctuationQuantum gravityQuantum mechanicsQuantum numberQuantum stateRay (optics)S-matrixScalar (physics)Scalar field theoryScattering amplitudeSchwarzschild metricsoftlaunchSpecial relativitySpontaneous symmetry breakingString theorySupergravitySuperspaceSupersymmetrySymmetry breakingTheoremTheoretical physicsTimelike InfinityTwo-dimensional spaceUnitarity (physics)VacuumYang–Mills theory
Delivery/Collection within 10-20 working days
Product Details
  • Weight: 397g
  • Dimensions: 152 x 229mm
  • Publication Date: 06 Mar 2018
  • Publisher: Princeton University Press
  • Publication City/Country: US
  • Language: English
  • ISBN13: 9780691179735

About Andrew Strominger

Andrew Strominger is the Gwill E. York Professor of Physics at Harvard University.

Customer Reviews

Be the first to write a review
0%
(0)
0%
(0)
0%
(0)
0%
(0)
0%
(0)
We use cookies to ensure that we give you the best experience on our website. If you continue we'll assume that you are understand this. Learn more
Accept